Home
Class 12
PHYSICS
In the previous question let V(0) be the...

In the previous question let `V_(0)` be the volume of each container. All other details remain the same. The number of moles of gas in the container at temperature `2 T_(0)` will be

A

`(p_(0)V_(0))/(2RT_(0))`

B

`(p_(0)V_(0))/(RT_(0))`

C

`(2p_(0)V_(0))/(3RT_(0))`

D

`(p_(0)V_(0))/(3RT_(0))`

Text Solution

Verified by Experts

Promotional Banner

Topper's Solved these Questions

  • Kinetic Theory of Gases and Gas Laws

    PHYSICS GALAXY - ASHISH ARORA|Exercise Advance MCQs with One or More Options Correct|15 Videos
  • Kinetic Theory of Gases and Gas Laws

    PHYSICS GALAXY - ASHISH ARORA|Exercise Unsolved Numerical Problems for Preparation of NSEP, INPhO & IPhO|64 Videos
  • Kinetic Theory of Gases and Gas Laws

    PHYSICS GALAXY - ASHISH ARORA|Exercise Conceptual MCQs Single Option Correct|27 Videos
  • HEAT TRANSFER

    PHYSICS GALAXY - ASHISH ARORA|Exercise Unsolved Numerical Problems for Preparation of NSEP,INPhO&IPhO|66 Videos
  • MAGNETIC EFFECTS OF CURRENT AND MAGNETISM

    PHYSICS GALAXY - ASHISH ARORA|Exercise U.N.P|79 Videos

Similar Questions

Explore conceptually related problems

In the previous questions, if the mass of the body is half the mass of the earth, and all other data remain the same, then t is equal to

Two identical container each of volume V_(0) are joined by a small pipe. The containers contain identical gases at temperature T_(0) and pressure P_(0) . One container is heated to temperature 2T_(0) while maintaining the other at the same temperature. The common pressure of the gas is P and n is the number of moles of gas in container at temperature 2T_(0) .

Equal volume of all gases always contains equal number of moles.

Two cylinder A and B having piston conneted by massless rod (as shown in figure). The cross-sectional area two cylinders are same & equal to 'S'.The cylinder A contains m gm of an ideal gas at Pressure P & temperature T_(0) The cylinder B contain identical gas at same temperature T_(0) but has different mass. The piston is held at the state in the position so that volume of gas in cylinder A & cylinder B are same and is equal to V_(0) . The walls & piston of cylinder A are thermally insulated, whereas cylinder B is maintained at temperature T_(0) reservoir. The whole system is in vacuum. Now the piston is slowly released and it moves towards left & machanical equilibrium is reached at the state when the volume of gas in cylinder A becomes V_(0)/2 Then (here gamma for gas =1.5) If work done by gas in cylinder B is W_(B) & work done by gas in cylinder A is W_(A) then

Two cylinder A and B having piston conneted by massless rod (as shown in figure). The cross-sectional area two cylinders are same & equal to 'S'.The cylinder A contains m gm of an ideal gas at Pressure P & temperature T_(0) The cylinder B contain identical gas at same temperature T_(0) but has different mass. The piston is held at the state in the position so that volume of gas in cylinder A & cylinder B are same and is equal to V_(0) . The walls & piston of cylinder A are thermally insulated, whereas cylinder B is maintained at temperature T_(0) reservoir. The whole system is in vacuum. Now the piston is slowly released and it moves towards left & machanical equilibrium is reached at the state when the volume of gas in cylinder A becomes V_(0)/2 Then (here gamma for gas =1.5) The mass of gas in cylinder B

Two cylinder A and B having piston conneted by massless rod (as shown in figure). The cross-sectional area two cylinders are same & equal to 'S'.The cylinder A contains m gm of an ideal gas at Pressure P & temperature T_(0) The cylinder B contain identical gas at same temperature T_(0) but has different mass. The piston is held at the state in the position so that volume of gas in cylinder A & cylinder B are same and is equal to V_(0) . The walls & piston of cylinder A are thermally insulated, whereas cylinder B is maintained at temperature T_(0) reservoir. The whole system is in vacuum. Now the piston is slowly released and it moves towards left & machanical equilibrium is reached at the state when the volume of gas in cylinder A becomes V_(0)/2 Then (here gamma for gas =1.5 ) The change in internal energy of gas in cylinder A

Two cylinder A and B having piston conneted by massless rod (as shown in figure). The cross-sectional area two cylinders are same & equal to 'S'.The cylinder A contains m gm of an ideal gas at Pressure P & temperature T_(0) The cylinder B contain identical gas at same temperature T_(0) but has different mass. The piston is held at the state in the position so that volume of gas in cylinder A & cylinder B are same and is equal to V_(0) . The walls & piston of cylinder A are thermally insulated, whereas cylinder B is maintained at temperature T_(0) reservoir. The whole system is in vacuum. Now the piston is slowly released and it moves towards left & machanical equilibrium is reached at the state when the volume of gas in cylinder A becomes V_(0)/2 Then (here gamma for gas =1.5) What will be the compressive force in conneting rod at equilibrium

Two adiabatic containers have volumes V_(1) and V_(2) respectively. The first container has monoatomic gas at pressure p_(1) and temperature T_(1) . The second container has another monoatomic gas at pressure p_(2) and temperature T_(2) . When the two containers are connected by a narrow tube, the final temperature and pressure of the gases in the containers are P and T respectively. Then

PHYSICS GALAXY - ASHISH ARORA-Kinetic Theory of Gases and Gas Laws-Numerical MCQs Single Options Correct
  1. The rms speed of hydrogen at 27^(@)C is v. What will be the rms speed ...

    Text Solution

    |

  2. Same volumes of hydrogen and oxygen at the same temperature and pressu...

    Text Solution

    |

  3. 2 m^(3) of hydrogen and 2 m^(3) of oxygen are at the same temperature....

    Text Solution

    |

  4. The mean rotational kinetic energy of a diatomic molecule at temperatu...

    Text Solution

    |

  5. One mole of an ideal gas undergoes a process in which T = T(0) + aV^(3...

    Text Solution

    |

  6. In the above question, maximum pressure attainable is

    Text Solution

    |

  7. Each molecule of a gas has F degrees of freedom . The ratio (C(p))/(C(...

    Text Solution

    |

  8. Gas at a pressure P(0) in contained as a vessel. If the masses of all ...

    Text Solution

    |

  9. The root mean square speed of the molecules of an enclosed gas is 'v'....

    Text Solution

    |

  10. Two containers of equal volume contain the same gas at pressure P(1) a...

    Text Solution

    |

  11. The mean square speed of the molecules of a gas at absolute temperatur...

    Text Solution

    |

  12. A mono atomic gas initially at 27^(@)C is compressed adiabatically to ...

    Text Solution

    |

  13. Three moles of oxygen ar mixed with two moles of helium. What will be ...

    Text Solution

    |

  14. The weight of a person is 60 kg . If he gets 10 calories of heat throu...

    Text Solution

    |

  15. Two idential container joined by a small pipe initially contain the sa...

    Text Solution

    |

  16. In the previous question let V(0) be the volume of each container. All...

    Text Solution

    |

  17. Four molecules of ags have speeds 1,2,3 and 4 km//s.The volue of the r...

    Text Solution

    |

  18. The average kinetic energy of a molecule of a gas at absolute temperat...

    Text Solution

    |

  19. The equation of state of n moles of an ideal gas is PV=nRT, where R is...

    Text Solution

    |

  20. The reading of a barometer containing some air above the mercury colum...

    Text Solution

    |